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生长素诱导的乙烯可能参与了在粉蓝烟草和白肋烟草杂交种所表现出的温度敏感致死过程中的凋亡性细胞死亡。

Possible involvement of auxin-induced ethylene in an apoptotic cell death during temperature-sensitive lethality expressed by hybrid between Nicotiana glutinosa and N. repanda.

作者信息

Yamada T, Marubashi W, Nakamura T, Niwa M

机构信息

Plant Biotechnology Institute, Ibaraki Agricultural Center, Iwama, Ibaraki, 319-0292 Japan.

出版信息

Plant Cell Physiol. 2001 Sep;42(9):923-30. doi: 10.1093/pcp/pce114.

Abstract

Interspecific hybrids of Nicotiana glutinosa L. x N. repanda Willd. express temperature-sensitive lethality induced by apoptotic cell death. Hybrid seedlings cultured at 28 degrees C began to exhibit lethal symptoms during early growth stages, and then they showed a high level of endogenous auxin compared with those of parental seedlings. Meanwhile, the level of auxin in hybrid seedlings cultured at 32 degrees C, which is a condition suppressing the lethality of this cross combination, was equal to or lower than those of parental seedlings. Administration of 2,3,5-triiodobenzoic acid (TIBA) as an auxin transport inhibitor into the hybrid seedlings suppressed lethal symptoms and had a life-extending effect. Additionally, TIBA has an effect to suppress DNA fragmentation, which is one of characteristics of apoptosis and has been detected in the hybrid seedlings expressing the lethality. Administration of aminooxyacetic acid (AOA) as an ethylene synthesis inhibitor, which could inhibit ethylene production, also showed the same effects as TIBA for the lethality. From these results, we suggested that auxin and ethylene were involved in an apoptotic cell death during the lethality, and the abnormal increase of endogenous auxin may lead to the ethylene production in hybrid seedlings during early growth stages.

摘要

粘毛烟草(Nicotiana glutinosa L.)与小花烟草(N. repanda Willd.)的种间杂种表现出由凋亡性细胞死亡诱导的温度敏感性致死性。在28摄氏度培养的杂种幼苗在生长早期开始出现致死症状,与亲本幼苗相比,它们随后表现出高水平的内源生长素。同时,在32摄氏度培养的杂种幼苗中生长素水平,这是一种抑制这种杂交组合致死性的条件,等于或低于亲本幼苗。向杂种幼苗施用作为生长素运输抑制剂的2,3,5-三碘苯甲酸(TIBA)可抑制致死症状并具有延长寿命的作用。此外,TIBA具有抑制DNA片段化的作用,DNA片段化是凋亡的特征之一,并且在表达致死性的杂种幼苗中已检测到。施用作为乙烯合成抑制剂的氨基氧乙酸(AOA),其可以抑制乙烯产生,对于致死性也显示出与TIBA相同的效果。从这些结果来看,我们认为生长素和乙烯参与了致死过程中的凋亡性细胞死亡,并且内源生长素的异常增加可能导致杂种幼苗在生长早期产生乙烯。

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